The mammary gland is a highly regenerative organ that can undergo multiple cycles of proliferation, lactation and involution, a process controlled by stem cells. The last decade much progress has been made in the identification of signaling pathways that function in these stem cells to control self-renewal, lineage commitment and epithelial differentiation in the normal mammary gland. The same signaling pathways that control physiological mammary development and homeostasis are also often found deregulated in breast cancer. Here we provide an overview on the functional and molecular identification of mammary stem cells in the context of both normal breast development and breast cancer. We discuss the contribution of some key signaling pathw...
Numerous studies have identified stem-like cells, termed cancer stem cells (CSCs), in breast tumors ...
The mammary gland undergoes major developmental changes during puberty and pregnancy. It is thought ...
Evidences have supported the pivotal roles of stem cells in mammary gland development. Many molecula...
The mammary gland is a highly regenerative organ that can undergo multiple cycles of proliferation, ...
The mammary gland is a highly regenerative organ that can undergo multiple cycles of proliferation, ...
The mammary gland is a highly regenerative organ that can undergo multiple cycles of proliferation, ...
SummaryThe recent identification of mouse mammary stem cells (MaSCs) and progenitor subpopulations h...
Objective. Notch signaling pathway is a vital parameter of the mammalian vascular system. In this re...
Abstract Introduction Notch signaling has been implic...
Abstract Introduction Notch signaling has been implic...
A woman's risk of breast cancer is strongly affected by her reproductive history. The hormonal milie...
Developmental pathways such as Notch play a pivotal role in tissue-specific stem cell self-renewal a...
Breast cancer is the most common cancer and the most frequent cause of cancer related mortality amon...
SummaryNotch signals mediate a wide range of activities in development and cancer. A report in this ...
The Notch signalling pathway is a highly conserved developmental signalling pathway, with vital role...
Numerous studies have identified stem-like cells, termed cancer stem cells (CSCs), in breast tumors ...
The mammary gland undergoes major developmental changes during puberty and pregnancy. It is thought ...
Evidences have supported the pivotal roles of stem cells in mammary gland development. Many molecula...
The mammary gland is a highly regenerative organ that can undergo multiple cycles of proliferation, ...
The mammary gland is a highly regenerative organ that can undergo multiple cycles of proliferation, ...
The mammary gland is a highly regenerative organ that can undergo multiple cycles of proliferation, ...
SummaryThe recent identification of mouse mammary stem cells (MaSCs) and progenitor subpopulations h...
Objective. Notch signaling pathway is a vital parameter of the mammalian vascular system. In this re...
Abstract Introduction Notch signaling has been implic...
Abstract Introduction Notch signaling has been implic...
A woman's risk of breast cancer is strongly affected by her reproductive history. The hormonal milie...
Developmental pathways such as Notch play a pivotal role in tissue-specific stem cell self-renewal a...
Breast cancer is the most common cancer and the most frequent cause of cancer related mortality amon...
SummaryNotch signals mediate a wide range of activities in development and cancer. A report in this ...
The Notch signalling pathway is a highly conserved developmental signalling pathway, with vital role...
Numerous studies have identified stem-like cells, termed cancer stem cells (CSCs), in breast tumors ...
The mammary gland undergoes major developmental changes during puberty and pregnancy. It is thought ...
Evidences have supported the pivotal roles of stem cells in mammary gland development. Many molecula...